1] Department of Mechanical Engineering, Indian Institute of Technology Kanpur, India [2].
Sci Rep. 2013 Nov 20;3:3266. doi: 10.1038/srep03266.
The extremely low limit of detection (LOD) posed by global food and water safety standards necessitates the need to perform a rapid process of integrated detection with high specificity, sensitivity and repeatability. The work reported in this article shows a microchip platform which carries out an ensemble of protocols which are otherwise carried in a molecular biology laboratory to achieve the global safety standards. The various steps in the microchip include pre-concentration of specific microorganisms from samples and a highly specific real time molecular identification utilizing a q-PCR process. The microchip process utilizes a high sensitivity antibody based recognition and an electric field mediated capture enabling an overall low LOD. The whole process of counting, sorting and molecular identification is performed in less than 4 hours for highly dilute samples.
全球食品和饮用水安全标准规定的极低检测极限(LOD),需要快速进行集成检测,以实现高特异性、高灵敏度和可重复性。本文报道的工作展示了一种微芯片平台,该平台可以执行一系列原本在分子生物学实验室中进行的协议,以达到全球安全标准。微芯片中的各个步骤包括从样品中预浓缩特定微生物,以及利用 q-PCR 过程进行高度特异性的实时分子鉴定。微芯片过程利用基于高灵敏度抗体的识别和电场介导的捕获,实现了总体低 LOD。对于高度稀释的样品,整个计数、分类和分子鉴定过程在不到 4 小时内完成。